International audienceCellular-FLICE inhibitory protein (c-FLIP) is a key anti-apoptotic regulator that inhibits cell death mediated by the death receptors Fas, DR4, DR5, and TNF-R1. Three splice variants of c-FLIP function at the DISC level by blocking the processing and activation of procaspase-8 and -10. Overexpression of c-FLIP has been identified in many different tumour types, and its downregulation in vitro has been shown to restore apoptosis mediated by CD95L and TRAIL. c-FLIP therefore represents a promising target for cancer therapy. This review focuses on the molecular mechanisms that control c-FLIP expression and current research into inhibitors of the protein. Increasing evidence supports the investigation of c-FLIP as a therap...
Deregulation of apoptosis is common in cancer and is often caused by overexpression of anti-apoptoti...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a major resistance...
The ability of cancer stem cells to self-renew indefinitely and differentiate into multiple tumour c...
International audienceCellular-FLICE inhibitory protein (c-FLIP) is a key anti-apoptotic regulator t...
International audienceCellular-FLICE inhibitory protein (c-FLIP) is a key anti-apoptotic regulator t...
International audienceCellular-FLICE inhibitory protein (c-FLIP) is a key anti-apoptotic regulator t...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
Cellular FLICE (FADD-like IL-1beta-converting enzyme)-inhibitory protein (c-FLIP) is a major resista...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a master anti-apop...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a major antiapopto...
Pancreatic adenocarcinoma is one of the leading causes of cancer death and despite aggressive surgic...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a major antiapopto...
Deregulation of apoptosis is common in cancer and is often caused by overexpression of anti-apoptoti...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a major resistance...
The ability of cancer stem cells to self-renew indefinitely and differentiate into multiple tumour c...
International audienceCellular-FLICE inhibitory protein (c-FLIP) is a key anti-apoptotic regulator t...
International audienceCellular-FLICE inhibitory protein (c-FLIP) is a key anti-apoptotic regulator t...
International audienceCellular-FLICE inhibitory protein (c-FLIP) is a key anti-apoptotic regulator t...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
Cellular FLICE (FADD-like IL-1beta-converting enzyme)-inhibitory protein (c-FLIP) is a major resista...
International audienceCellular FLIP (c-FLIP), also known as FLICE-inhibitory protein, has been ident...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a master anti-apop...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a major antiapopto...
Pancreatic adenocarcinoma is one of the leading causes of cancer death and despite aggressive surgic...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a major antiapopto...
Deregulation of apoptosis is common in cancer and is often caused by overexpression of anti-apoptoti...
Cellular FLICE (FADD-like IL-1β-converting enzyme)-inhibitory protein (c-FLIP) is a major resistance...
The ability of cancer stem cells to self-renew indefinitely and differentiate into multiple tumour c...